Key result
Quercetin combined with moderate exercise training significantly reduced carotid artery wall thickness (0.21 mm vs 0.35 mm, p<0.005) and reversed oxidative stress in diabetic rats.
Why the study?
Hyperglycemia and oxidative stress contribute to diabetic vascular complications, motivating investigation into combining quercetin treatment with moderate exercise training to reverse diabetes-induced oxidative stress and carotid artery changes.
Does quercetin combined with moderate exercise training improve carotid artery ultrasound parameters and oxidative stress in diabetic Wistar rats?
Does quercetin combined with moderate exercise training improve carotid artery ultrasound parameters and oxidative stress in diabetic Wistar rats?
Absolute Event Rate: 0.21% vs 0.35%
p-value: p=<0.005
Quercetin combined with moderate exercise training attenuates hyperglycemia-mediated oxidative stress and vascular structural changes in a rat model of type 1 diabetes.
Should not change clinical practice; hypothesis-generating for quercetin-exercise effects on diabetic vascular remodeling.
Hyperglycemia and oxidative stress have a major role in the pathogenesis of diabetic vascular complications. In this study, we investigated the efficacy of combining quercetin treatment with moderate exercise training in reversing diabetes-induced oxidative stress and ultrasound modifications in rat carotid arteries. The diabetic Wistar rats were divided into sedentary groups and trained groups. The trained animals went through a regular moderate exercise by swimming (5 weeks). Some non-diabetic and diabetic rats were daily treated with quercetin (30 mg/kg, for 5 weeks). At the end of the study, the imaging evaluation required to assess the effects of diabetes on carotid arteries was performed by micro-ultrasound (MU). The diabetic rats presented atherosclerotic plaques, with an increase in the echogenicity of the carotid artery wall, carotid intima-media thickness (CIMT), and carotid wall thickness, while the diabetic trained rats treated with quercetin presented normal values of these parameters. Malondialde-hyde (MDA) levels, superoxide dismutase (SOD) antioxidant enzyme activity, reduced glutathione (GSH) levels and the reduced (GSH) to oxidized (GSSG) glutathione ratio were determined in the carotid artery tissue. Diabetes caused elevated MDA levels and a decrease in SOD activity, GSH levels and GSH/GSSG ratio in the carotid artery tissue. Treating diabetic rats with quercetin combined with moderate exercise training reversed all these oxidative stress parameters. Our results show that this combination, quercetin and moderate exercise training, can be a good treatment strategy for the vascular complications of diabetes by attenuating hyperglycemia-mediated oxidative stress.
No takes yet. Share an insight, caveat, or question.
Chiş et al. (2019) studied Type 1 diabetes mellitus (experimental) (n=80). Quercetin and moderate exercise training vs. Diabetic sedentary rats (no treatment/training) was evaluated on Carotid artery wall thickness (mm) (p=<0.005). Quercetin combined with moderate exercise training significantly reduced carotid artery wall thickness (0.21 mm vs 0.35 mm, p<0.005) and reversed oxidative stress in diabetic rats.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: